Zhao Baolin, He Liangliang, Jiang Chuan, Liu Ye, He Hua, Bai Quanzi, Zhou Shaoli, Zheng Xiaoling, Wen Jiangqi, Mysore Kirankumar S, Tadege Million, Liu Yu, Liu Renyi, Chen Jianghua
CAS Key Laboratory of Topical Plant Resources and Sustainable Use, CAS Center for Excellence in Molecular Plant Sciences, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, 88 Xuefu Road, Kunming, Yunnan, 650223, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
New Phytol. 2020 Jul;227(2):613-628. doi: 10.1111/nph.16539. Epub 2020 Apr 23.
In species with compound leaves, the positions of leaflet primordium initiation are associated with local peaks of auxin accumulation. However, the role of auxin during the late developmental stages and outgrowth of compound leaves remains largely unknown. Using genome resequencing approaches, we identified insertion sites at four alleles of the LATERAL LEAFLET SUPPRESSION1 (LLS1) gene, encoding the auxin biosynthetic enzyme YUCCA1 in Medicago truncatula. Linkage analysis and complementation tests showed that the lls1 mutant phenotypes were caused by the Tnt1 insertions that disrupted the LLS1 gene. The transcripts of LLS1 can be detected in primordia at early stages of leaf initiation and later in the basal regions of leaflets, and finally in vein tissues at late leaf developmental stages. Vein numbers and auxin content are reduced in the lls1-1 mutant. Analysis of the lls1 sgl1 and lls1 palm1 double mutants revealed that SGL1 is epistatic to LLS1, and LLS1 works with PALM1 in an independent pathway to regulate the growth of lateral leaflets. Our work demonstrates that the YUCCA1/YUCCA4 subgroup plays very important roles in the outgrowth of lateral leaflets during compound leaf development of M. truncatula, in addition to leaf venation.
在具有复叶的物种中,小叶原基起始的位置与生长素积累的局部峰值相关。然而,生长素在复叶发育后期和生长过程中的作用仍 largely 未知。利用基因组重测序方法,我们在蒺藜苜蓿中鉴定了编码生长素生物合成酶 YUCCA1 的侧生小叶抑制 1(LLS1)基因的四个等位基因的插入位点。连锁分析和互补试验表明,lls1 突变体表型是由破坏 LLS1 基因的 Tnt1 插入引起的。LLS1 的转录本在叶片起始早期的原基中以及随后在小叶的基部区域中可以检测到,最后在叶片发育后期的叶脉组织中可以检测到。lls1-1 突变体中的叶脉数量和生长素含量减少。对 lls1 sgl1 和 lls1 palm1 双突变体的分析表明,SGL1 对 LLS1 上位,并且 LLS1 在独立途径中与 PALM1 共同作用以调节侧生小叶的生长。我们的工作表明,YUCCA1/YUCCA4 亚组除了在叶脉形成中起作用外,在蒺藜苜蓿复叶发育过程中侧生小叶的生长中也起着非常重要的作用。